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首页> 外文期刊>Chemistry: A European journal >The intramolecular interaction of thiophene and furan with aromatic and fluoroaromatic systems in some [3.3]meta(heterocyclo)paracyclophanes: A combined computational and NMR spectroscopic study
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The intramolecular interaction of thiophene and furan with aromatic and fluoroaromatic systems in some [3.3]meta(heterocyclo)paracyclophanes: A combined computational and NMR spectroscopic study

机译:噻吩和呋喃在[3.3]间(杂环)对环环烷烃中与芳香族和氟代芳香族系统的分子内相互作用:计算和核磁共振波谱研究

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Four thiophene- and furancontaining [3.3]meta(heterocyclo)paracyclophanes were designed and synthesized to study the intramolecular interaction between standard heteroaromatic rings and tetra-H- or tetra-F-substituted benzenes. A complete conformational analysis, carried out by DFT calculations and variable-temperature NMR techniques, showed that, despite their structural similarity, these adducts have different conformational preferences and undergo different types of isomerizations depending on the nature of the heterocycle. The thiophene-derived adducts adopted a parallel stacked arrangement of the aromatic systems in the ground-state conformations. Their isomerization pathways involved a thiophene ring-flip process passing through an edge-to-face arranged transition state in which the heterocycle is perpendicular to the benzene platform and its sulfur atom points toward the center of that ring. The threshold energy barrier to the ring-flip process was higher by 10 kJ mol ~(-1) in the case of the adduct featuring the perfluorinated benzene. This difference was rationalized by assuming that the ground-state conformations of the H- and F-substituted compounds have different stability. On the contrary, the furan-derived adducts were shown by calculations and NMR spectroscopy to adopt, in their groundstate conformations, a perpendicular edge-to-face disposition of the rings with the oxygen atom pointing toward the benzene platform. The adoption of this arrangement was confirmed by X-ray crystallography. In the case of these compounds, the isomerization process involved distortion of the CH_2SCH_2 bridges connecting the aromatic systems and the adoption of transitionstate geometries for which the rings were arranged in a parallel-stacked orientation. Once again a very nice agreement was observed between the predicted and the experimentally determined geometries and pathways. In the case of the furan-containing compounds, the threshold barriers were found to be much lower in energy that those observed for the thiophene derivatives. Remarkably, they were virtually independent of the presence of fluorine atoms on the platform benzene ring.
机译:设计并合成了四个含噻吩和呋喃的[3.3]间(杂环)对环环烷酮,以研究标准杂芳族环与四-H-或四-F-取代的苯之间的分子内相互作用。通过DFT计算和可变温度NMR技术进行的完整构象分析表明,尽管它们的结构相似,但这些加合物具有不同的构象偏好,并根据杂环的性质进行不同类型的异构化。噻吩衍生的加合物采用基态构型的芳族体系平行堆叠排列。它们的异构化途径涉及噻吩环翻转过程,该过程经过边到面排列的过渡态,其中杂环垂直于苯平台,其硫原子指向该环的中心。在具有全氟化苯的加合物的情况下,对翻转过程的阈值能垒提高了10 kJ mol〜(-1)。通过假设H和F取代的化合物的基态构象具有不同的稳定性,可以合理化这种差异。相反,通过计算和NMR光谱表明,呋喃衍生的加合物在其基态构型中采用了环的垂直边对面布置,氧原子指向苯平台。通过X射线晶体学证实了这种布置的采用。在这些化合物的情况下,异构化过程涉及连接芳族体系的CH_2SCH_2桥的变形以及采用过渡态几何构型(对于这些过渡构型,环以平行堆积的方向排列)。再次在预测的几何形状和实验确定的几何形状和路径之间观察到非常好的协议。对于含呋喃的化合物,发现阈值势垒的能量远低于噻吩衍生物所观察到的。值得注意的是,它们实际上与平台苯环上氟原子的存在无关。

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